IDT5T2010BBI IDT, Integrated Device Technology Inc, IDT5T2010BBI Datasheet - Page 9

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IDT5T2010BBI

Manufacturer Part Number
IDT5T2010BBI
Description
IC CLK DVR ZD PLL 2.5V 144-BGA
Manufacturer
IDT, Integrated Device Technology Inc
Series
TeraClock™r
Type
PLL Clock Driverr
Datasheet

Specifications of IDT5T2010BBI

Pll
Yes with Bypass
Input
eHSTL, HSTL, LVPECL, LVTTL
Output
eHSTL, HSTL, LVTTL
Number Of Circuits
1
Ratio - Input:output
2:10
Differential - Input:output
Yes/No
Frequency - Max
250MHz
Divider/multiplier
Yes/No
Voltage - Supply
2.3 V ~ 2.7 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
144-BGA
Frequency-max
250MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
5T2010BBI

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NOTES:
1. See RECOMMENDED OPERATING RANGE table.
2. V
3. V
4. For single-ended operation, in a differential mode, REF
5. Voltage required to maintain a logic HIGH, single-ended operation in differential mode.
6. Voltage required to maintain a logic LOW, single-ended operation in differential mode.
7. Typical values are at V
8. The reference clock input is capable of HSTL, eHSTL, LVEPECL, 1.8V or 2.5V LVTTL operation independent of the device output. (See Input/Output Selection table.)
DC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE FOR eHSTL
DIFFERENTIAL INPUT AC TEST CONDITIONS FOR HSTL
NOTES:
1. The 1V peak-to-peak input pulse level is specified to allow consistent, repeatable results in an automatic test equipment (ATE) environment. This device meets the V
2. A 750mV crossing point level is specified to allow consistent, repeatable results in an automatic test equipment (ATE) environment. This device meets the V
3. In all cases, input waveform timing is marked at the differential cross-point of the input signals.
4. The input signal edge rate of 1V/ns or greater is to be maintained in the 20% to 80% range of the input waveform.
IDT5T2010
2.5V ZERO DELAY PLL CLOCK DRIVER TERACLOCK
Input Characteristics
Output Characteristics
only. The DC differential voltage must be maintained to guarantee retaining the existing HIGH or LOW input. The AC differential voltage must be achieved to guarantee switching
to a new state.
Symbol
Symbol
specification under actual use conditions.
actual use conditions.
DIF
CM
V
V
V
V
t
V
V
V
V
V
V
V
V
R
I
V
I
REF
IH
DIF
CM
OH
DIF
THI
, t
IL
OL
OX
IN
IH
specifies the minimum input differential voltage (V
IK
IL
specifies the maximum allowable range of (V
X
F
Input HIGH Current
Input LOW Current
Clamp Diode Voltage
DC Input Voltage
DC Differential Voltage
DC Common Mode Input Voltage
DC Input HIGH
DC Input LOW
Single-Ended Reference Voltage
Output HIGH Voltage
Output LOW Voltage
FB/FB Output Crossing Point
Parameter
Input Signal Swing
Differential Input Signal Crossing Point
Input Timing Measurement Reference Level
Input Signal Edge Rate
DD
= 2.5V, V
Parameter
(4,6,8)
(4,5,8)
DDQ
(2,8)
= 1.8V, +25°C ambient.
(1)
(4)
(4,8)
TR
(3,8)
+ V
TR
[1:0]
- V
CP
/V
) /2. Differential mode only.
CP
REF
(2)
) required for switching where V
[1:0]
V
V
V
I
I
I
I
OH
OH
OL
OL
DD
DD
DD
(3)
= 8mA
= 100μA
= -100μA
= -8mA
is tied to the DC voltage V
= 2.7V
= 2.7V
= 2.3V, I
Test Conditions
IN
= -18mA
9
V
V
I
I
= V
= GND/V
TR
is the "true" input level and V
DDQ
REF
[1:0]
/GND
DDQ
.
V
V
V
V
DDQ
REF
DDQ
DDQ
Min.
- 0.3
800
0.2
/2 - 150
+ 100
- 0.4
- 0.1
CP
INDUSTRIAL TEMPERATURE RANGE
is the "complement" input level. Differential mode
Crossing Point
V
Typ.
- 0.7
DDQ
900
900
Value
750
(7)
/2
1
1
V
V
DDQ
REF
- 1.2
+3.6
1000
Max
0.4
0.1
/2 + 150
±5
±5
- 100
X
specification under
Units
V/ns
mV
V
V
Unit
mV
mV
mV
mV
mV
μA
DIF
(1)
V
V
V
V
V
V
V
(AC)

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